Proteomic, biomechanical and functional analyses define neutrophil heterogeneity in systemic lupus erythematosus

Author:

Bashant Kathleen RORCID,Aponte Angel MORCID,Randazzo Davide,Rezvan Sangsari Paniz,Wood Alexander JTORCID,Bibby Jack A,West Erin EORCID,Vassallo Arlette,Manna Zerai G,Playford Martin PORCID,Jordan Natasha,Hasni Sarfaraz,Gucek Marjan,Kemper Claudia,Conway Morris Andrew,Morgan Nicole Y,Toepfner Nicole,Guck Jochen,Mehta Nehal N,Chilvers Edwin R,Summers Charlotte,Kaplan Mariana JORCID

Abstract

ObjectivesLow-density granulocytes (LDGs) are a distinct subset of proinflammatory and vasculopathic neutrophils expanded in systemic lupus erythematosus (SLE). Neutrophil trafficking and immune function are intimately linked to cellular biophysical properties. This study used proteomic, biomechanical and functional analyses to further define neutrophil heterogeneity in the context of SLE.MethodsProteomic/phosphoproteomic analyses were performed in healthy control (HC) normal density neutrophils (NDNs), SLE NDNs and autologous SLE LDGs. The biophysical properties of these neutrophil subsets were analysed by real-time deformability cytometry and lattice light-sheet microscopy. A two-dimensional endothelial flow system and a three-dimensional microfluidic microvasculature mimetic (MMM) were used to decouple the contributions of cell surface mediators and biophysical properties to neutrophil trafficking, respectively.ResultsProteomic and phosphoproteomic differences were detected between HC and SLE neutrophils and between SLE NDNs and LDGs. Increased abundance of type 1 interferon-regulated proteins and differential phosphorylation of proteins associated with cytoskeletal organisation were identified in SLE LDGs relative to SLE NDNs. The cell surface of SLE LDGs was rougher than in SLE and HC NDNs, suggesting membrane perturbances. While SLE LDGs did not display increased binding to endothelial cells in the two-dimensional assay, they were increasingly retained/trapped in the narrow channels of the lung MMM.ConclusionsModulation of the neutrophil proteome and distinct changes in biophysical properties are observed alongside differences in neutrophil trafficking. SLE LDGs may be increasingly retained in microvasculature networks, which has important pathogenic implications in the context of lupus organ damage and small vessel vasculopathy.

Funder

NHLI Foundation

NIHR Imperial Biomedical Research Centre

National Heart Lung and Blood Institute

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Medical Research Council

National Institute of Biomedical Imaging and Bioengineering

Gates Cambridge Scholarship

NIH/OXCAM Fellowship

Publisher

BMJ

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology

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